Diehn Till A, Pommerrenig Benjamin, Bernhardt Nadine, Hartmann Anja, Bienert Gerd P
Metalloid Transport Group, Department of Physiology and Cell Biology, Leibniz Institute of Plant Genetics and Crop Plant Research, Gatersleben Germany.
Experimental Taxonomy, Department of Genebank, Leibniz Institute of Plant Genetics and Crop Plant Research, Gatersleben Germany.
Front Plant Sci. 2015 Apr 7;6:166. doi: 10.3389/fpls.2015.00166. eCollection 2015.
Aquaporins (AQPs) are essential channel proteins that regulate plant water homeostasis and the uptake and distribution of uncharged solutes such as metalloids, urea, ammonia, and carbon dioxide. Despite their importance as crop plants, little is known about AQP gene and protein function in cabbage (Brassica oleracea) and other Brassica species. The recent releases of the genome sequences of B. oleracea and Brassica rapa allow comparative genomic studies in these species to investigate the evolution and features of Brassica genes and proteins. In this study, we identified all AQP genes in B. oleracea by a genome-wide survey. In total, 67 genes of four plant AQP subfamilies were identified. Their full-length gene sequences and locations on chromosomes and scaffolds were manually curated. The identification of six additional full-length AQP sequences in the B. rapa genome added to the recently published AQP protein family of this species. A phylogenetic analysis of AQPs of Arabidopsis thaliana, B. oleracea, B. rapa allowed us to follow AQP evolution in closely related species and to systematically classify and (re-) name these isoforms. Thirty-three groups of AQP-orthologous genes were identified between B. oleracea and Arabidopsis and their expression was analyzed in different organs. The two selectivity filters, gene structure and coding sequences were highly conserved within each AQP subfamily while sequence variations in some introns and untranslated regions were frequent. These data suggest a similar substrate selectivity and function of Brassica AQPs compared to Arabidopsis orthologs. The comparative analyses of all AQP subfamilies in three Brassicaceae species give initial insights into AQP evolution in these taxa. Based on the genome-wide AQP identification in B. oleracea and the sequence analysis and reprocessing of Brassica AQP information, our dataset provides a sequence resource for further investigations of the physiological and molecular functions of Brassica crop AQPs.
水通道蛋白(AQPs)是调节植物水分稳态以及诸如类金属、尿素、氨和二氧化碳等不带电荷溶质的吸收与分配的重要通道蛋白。尽管作为农作物它们很重要,但关于水通道蛋白基因和蛋白质在甘蓝(芸苔属)及其他芸苔属物种中的功能却知之甚少。最近公布的甘蓝和白菜型油菜的基因组序列使得对这些物种进行比较基因组研究成为可能,以探究芸苔属基因和蛋白质的进化及特征。在本研究中,我们通过全基因组调查鉴定了甘蓝中的所有水通道蛋白基因。总共鉴定出了四个植物水通道蛋白亚家族的67个基因。我们手动整理了它们的全长基因序列以及在染色体和支架上的位置。在白菜型油菜基因组中额外鉴定出的六个全长水通道蛋白序列补充到了该物种最近公布的水通道蛋白家族中。对拟南芥、甘蓝和白菜型油菜的水通道蛋白进行系统发育分析,使我们能够追踪近缘物种中水通道蛋白的进化,并对这些异构体进行系统分类和(重新)命名。在甘蓝和拟南芥之间鉴定出了33组水通道蛋白直系同源基因,并分析了它们在不同器官中的表达。两个选择性过滤器、基因结构和编码序列在每个水通道蛋白亚家族中高度保守,而一些内含子和非翻译区的序列变异则很常见。这些数据表明,与拟南芥直系同源物相比,芸苔属水通道蛋白具有相似的底物选择性和功能。对三个十字花科物种中所有水通道蛋白亚家族的比较分析初步揭示了这些分类群中水通道蛋白的进化情况。基于对甘蓝的全基因组水通道蛋白鉴定以及对芸苔属水通道蛋白信息的序列分析和再处理,我们的数据集为进一步研究芸苔属作物水通道蛋白的生理和分子功能提供了序列资源。